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鏻型双子表面活性剂的溶液性质及静电纺丝

Solution properties and electrospinning of phosphonium gemini surfactants.

作者信息

Hemp Sean T, Hudson Amanda G, Allen Michael H, Pole Sandeep S, Moore Robert B, Long Timothy E

机构信息

Macromolecules and Interfaces Institute, Department of Chemistry, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Soft Matter. 2014 Jun 14;10(22):3970-7. doi: 10.1039/c4sm00271g. Epub 2014 Apr 14.

DOI:10.1039/c4sm00271g
PMID:24733359
Abstract

Bis(diphenylphosphino)alkanes quantitatively react with excess 1-bromododecane to prepare novel phosphonium gemini surfactants with spacer lengths ranging from 2 to 4 methylenes (12-2/3/4-12P). Dodecyltriphenylphosphonium bromide (DTPP), a monomeric surfactant analog, was readily water soluble, however, in sharp contrast, phosphonium gemini surfactants were poorly soluble in water due to two hydrophobic tails and relatively hydrophobic cationic head groups containing phenyl substituents. Isothermal titration calorimetry did not reveal a measurable critical micelle concentration for the 12-2-12P phosphonium gemini surfactant in water at 25 °C. Subsequent studies in 50/50 v/v water-methanol at 25 °C showed a CMC of 1.0 mM for 12-2-12P. All phosphonium gemini surfactants effectively complexed nucleic acids, but failed to deliver nucleic acids in vitro to HeLa cells. The solution behavior of phosphonium gemini surfactants was investigated in chloroform, which is an organic solvent where reverse micellar structures are favored. Solution rheology in chloroform explored the solution behavior of the phosphonium gemini surfactants compared to DTPP. The 12-2-12P and 12-3-12P gemini surfactants were successfully electrospun from chloroform to generate uniform fibers while 12-4-12P gemini surfactant and DTPP only electrosprayed to form droplets.

摘要

双(二苯基膦基)烷烃与过量的1-溴十二烷定量反应,以制备具有2至4个亚甲基间隔长度的新型鏻型双子表面活性剂(12-2/3/4-12P)。十二烷基三苯基溴化鏻(DTPP),一种单体表面活性剂类似物,很容易溶于水,然而,与之形成鲜明对比的是,由于两个疏水尾部和含有苯基取代基的相对疏水的阳离子头部基团,鏻型双子表面活性剂在水中的溶解度很差。等温滴定量热法未显示25℃下水中12-2-12P鏻型双子表面活性剂的可测量临界胶束浓度。随后在25℃下50/50 v/v水-甲醇中的研究表明,12-2-12P的临界胶束浓度为1.0 mM。所有鏻型双子表面活性剂都能有效地络合核酸,但在体外未能将核酸递送至HeLa细胞。在氯仿中研究了鏻型双子表面活性剂的溶液行为,氯仿是一种有利于反胶束结构的有机溶剂。与DTPP相比,氯仿中的溶液流变学研究了鏻型双子表面活性剂的溶液行为。12-2-12P和12-3-12P双子表面活性剂成功地从氯仿中静电纺丝以产生均匀的纤维,而12-4-12P双子表面活性剂和DTPP仅电喷雾形成液滴。

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